简介概要

Effect of Extrusion Forming on Compressive Strength of Al_(18)B_4O_(33)w/Mg Composites

来源期刊:稀有金属材料与工程2009年增刊第3期

论文作者:Li Zhengjia Oy Haibo Qi Lehua Li Hejun

关键词:Al_(18)B_4O_(33)w/Mg composites; extrusion forming; microstructure; compressive strength;

摘    要:The aluminum borate whisker reinforced magnesium matrix composites (Al_(18)B_4O_(33)w/Mg) were fabricated by pressure infiltration technique and extrusion-vacuum infiltration technique respectively to study the effect of extrusion forming on their mechanical behaviors. The microstructure of the composites was observed by scanning electron microscopy. The compressive strength was investigated and compared with that of the matrix alloy AZ91D. The results show that the extrusion forming could cause fracture of the whisker, but reduce the holes in the composite during impregnation and improve the interfacial bonding between the whisker and the matrix alloy. Compared with that of the matrix as-cast alloy AZ91D, the compressive strength of Al_(18)B_4O_(33)w/Mg by the pressure infiltration technique was increased by 22%, while that of Al_(18)B_4O_(33)w/Mg by the extrusion-vacuum infiltration technique was increased by 120 %.

详情信息展示

Effect of Extrusion Forming on Compressive Strength of Al_(18)B_4O_(33)w/Mg Composites

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摘要:The aluminum borate whisker reinforced magnesium matrix composites (Al_(18)B_4O_(33)w/Mg) were fabricated by pressure infiltration technique and extrusion-vacuum infiltration technique respectively to study the effect of extrusion forming on their mechanical behaviors. The microstructure of the composites was observed by scanning electron microscopy. The compressive strength was investigated and compared with that of the matrix alloy AZ91D. The results show that the extrusion forming could cause fracture of the whisker, but reduce the holes in the composite during impregnation and improve the interfacial bonding between the whisker and the matrix alloy. Compared with that of the matrix as-cast alloy AZ91D, the compressive strength of Al_(18)B_4O_(33)w/Mg by the pressure infiltration technique was increased by 22%, while that of Al_(18)B_4O_(33)w/Mg by the extrusion-vacuum infiltration technique was increased by 120 %.

关键词:Al_(18)B_4O_(33)w/Mg composites; extrusion forming; microstructure; compressive strength;

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